转录组
重编程
糖
光合作用
分解代谢
生物
植物
基因
盐(化学)
细胞生物学
化学
新陈代谢
基因表达
生物化学
物理化学
作者
Ailin Liu,Zhixia Xiao,Man‐Wah Li,Fuk‐Ling Wong,Wai‐Shing Yung,Yee‐Shan Ku,Qianwen Wang,Xin Wang,Min Xie,Aldrin Kay‐Yuen Yim,Ting‐Fung Chan,Hon‐Ming Lam
摘要
Abstract To obtain a comprehensive understanding of transcriptomic reprogramming under salt stress, we performed whole‐transcriptome sequencing on the leaf and root of soybean seedlings subjected to salt treatment in a time‐course experiment (0, 1, 2, 4, 24, and 48 hr). This time series dataset enabled us to identify important hubs and connections of gene expressions. We highlighted the analysis on phytohormone signaling pathways and their possible crosstalks. Differential expressions were also found among those genes involved in carbon and nitrogen metabolism. In general, the salt‐treated seedlings slowed down their photosynthetic functions and ramped up sugar catabolism to provide extra energy for survival. Primary nitrogen assimilation was shut down whereas nitrogen resources were redistributed. Overall, the results from the transcriptomic analyses indicate that the plant uses a multipronged approach to overcome salt stress, with both fast‐acting, immediate physiological responses, and longer term reactions that may involve metabolic adjustment.
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